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Four-legged three-phase PFC rectifier with fault tolerant capability

机译:具有容错能力的四腿三相PFC整流器

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A four-legged three-phase PFC rectifier is proposed to handle unbalanced source voltage and to provide fault tolerant operation. The four-legged PFC rectifier is controlled by a three-dimensional space vector modulation (3D SVM) scheme, and runs in the overmodulation region when the source is unbalanced and/or a leg failure occurs. Modeling and control of the four-legged PFC rectifier are presented. Under unbalanced source, operation of the four-legged rectifier with three control strategies-equal current, equal resistance and constant power are analyzed. Two rectifier failure modes are studied: (1) entire leg fails; (2) active switches fail with the anti-parallel diodes still functional. It turns out that in both failure modes, the PFC rectifier can have an equal or higher than 2/3 of the rated output power level. The operation of the four-legged rectifier with 3D SVM is demonstrated by experimental results. The simulation results show that the proposed four-legged rectifier is advantageous over directly coupled three single-phase PFC rectifier and three-legged three-phase PFC rectifier.
机译:提出了一种四腿的三相PFC整流器来处理不平衡的源电压并提供容错操作。四腿PFC整流器由三维空间矢量调制(3D SVM)方案控制,并且当源不平衡并且发生腿部故障时,在过调制区域中运行。提出了四足PFC整流器的建模与控制。在不平衡的源下,分析了四腿整流器的操作,具有三个控制策略等电流,等电阻和恒定功率。研究了两个整流器故障模式:(1)整个腿部失败; (2)有源开关失败,反并行二极管仍然功能。事实证明,在两个故障模式中,PFC整流器可以具有等于或高于额定输出功率电平的2/3。通过实验结果证明了具有3D SVM的四腿整流器的操作。仿真结果表明,所提出的四腿整流器是有利的三个单相PFC整流器和三针三相PFC整流器。

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